Sokke Rudraiah Pavitra, Herbsleb Louisa, Salakova Michaela, Gröger Henriette, Steyer Anna Maria, Alves Frauke, Feldmann Claus, Walter Andreas
Center for Optical Technologies, Aalen University, Aalen, Germany.
Institute of Inorganic Chemistry, Karlsruhe Institute of Technology (KIT), Karlsruhe, Germany.
Microsc Res Tech. 2025 Sep 1. doi: 10.1002/jemt.70071.
Understanding the intracellular fate of nanoparticles (NPs) is essential for advancing nanomedicine, particularly in targeted drug delivery for cancer therapy. Here, we present a complementary cryogenic microscopy workflow across scales to investigate the uptake and subcellular localization of zirconyl-containing inorganic-organic hybrid nanoparticles (IOH-NPs) in murine breast cancer cells. Our approach integrates cryogenic fluorescence microscopy (cryo-FM), cryo-focused ion beam scanning electron microscopy (cryo-FIBSEM), and cryo-soft X-ray tomography (cryo-SXT), enabling molecular specificity, high-resolution imaging, and volumetric ultrastructural analysis in near-native cellular states. We demonstrate that the cryogenic workflow provides enough contrast and resolution across all modalities for quantifying the IOH-NP uptake: NPs are internalized within 2 h of incubation and progressively accumulate in endolysosomes over time, as confirmed by fluorescence labeling and SXT. Quantitative analysis reveals a marked increase in endolysosomal accumulation of IOH-NPs from 2 to 24 h. Our findings help to establish multimodal cryogenic microscopy as a powerful tool for nanoscale imaging and quantitative analysis of NP uptake within close-to-native cells, offering new insights into NP trafficking and cellular responses relevant to nanomedicine development.
了解纳米颗粒(NPs)的细胞内命运对于推进纳米医学至关重要,特别是在癌症治疗的靶向药物递送方面。在此,我们展示了一种跨尺度的互补低温显微镜工作流程,以研究含锆无机 - 有机杂化纳米颗粒(IOH - NPs)在小鼠乳腺癌细胞中的摄取和亚细胞定位。我们的方法整合了低温荧光显微镜(cryo - FM)、低温聚焦离子束扫描电子显微镜(cryo - FIBSEM)和低温软X射线断层扫描(cryo - SXT),能够在接近天然细胞状态下实现分子特异性、高分辨率成像和体积超微结构分析。我们证明,低温工作流程在所有模式下都提供了足够的对比度和分辨率来量化IOH - NPs的摄取:通过荧光标记和SXT证实,NPs在孵育2小时内被内化,并随着时间的推移在溶酶体中逐渐积累。定量分析显示,IOH - NPs在溶酶体中的积累从2小时到24小时显著增加。我们的研究结果有助于将多模态低温显微镜确立为一种强大的工具,用于在接近天然细胞中对NP摄取进行纳米级成像和定量分析,为与纳米医学发展相关的NP运输和细胞反应提供了新的见解。